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Biochar amendment pyrolysed with rice straw increases rice production and mitigates methane emission over successive three years

机译:用稻草的生物炭修正案含有稻草的稻米产量和减轻连续三年的甲烷排放

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摘要

A sustainable biochar strategies on increasing crop yield and mitigating CH_4 emissions over successive years is unknown. Thus, on-site equivalent rice straw biochar-returning (ERSC, biochar at 2.8 t ha~(-1) annual) were compared with on-site equivalent rice straw- returning (RS, rice straw at 8 t ha~(-1) annual) and high application rate biochar-returning (RSCH, biochar at 22.5 t ha~(-1) only in the first year). The RS and RSCH treatments increased rice production by 10.1% and 11.8% on average, respectively. The ERSC treatment continually increased rice production by 8.0%, 1.6% and 7.3% in three successive years. The ERSC treatment had a cumulative effect on the soil nutrients phosphorus (P), potassium (K), and magnesium (Mg), as well as increasing total carbon (TC) and total nitrogen (TN) and continuously reducing the effect of soil available aluminum (Al). The RS treatment significantly promoted CH_4 emissions while the ERSC treatment reduced methane emissions by 43%, 31% and 30% and the RSCH treatment reduced methane emissions by 52%, 22% and 14% in three successive years. Compared with RSCH, ERSC showed the best long-term stable effect on methane emission mitigation in three successive years. This might result from the fact that fresh biochar promoted anaerobic oxidation of methane. This research gives us scientific evidence that an on-site equivalent rice straw biochar-returning strategy may be a promising method for sustaining rice production and mitigating methane emissions.
机译:可持续生物炭策略增加作物产量和连续岁月的减少CH_4排放是未知的。因此,与现场相当的稻草返回(Rs,8 t Ha〜(-1)的现场等当量稻草返回(ERSC,BioChar,2.8吨HA〜(-1)年度的生物炭返回(-1(-1) )年度)和高申请率Biochar返还(RSCH,BioChar在22.5 T HA〜(-1)第一年)。 RS和RSCH治疗分别增加了水稻产量10.1%和11.8%。连续几年,ERSC治疗连续增加8.0%,1.6%和7.3%。 ERSC治疗对土壤营养素(P),钾(K)和镁(Mg)的累积作用,以及增加总碳(TC)和总氮(TN),并连续降低土壤的效果铝(Al)。 RS治疗显着促进了CH_4排放,同时ERSC处理将甲烷排放减少43%,31%和30%,在连续三年内将甲烷排放量降低52%,22%和14%。与RSCH相比,ERSC在连续三年内对甲烷排放缓解的最佳长期稳定效果。这可能是由于新鲜生物炭促进了甲烷的厌氧氧化。该研究为我们提供了科学证据,即现场的当量稻草生物炭返回策略可能是维持水稻生产和缓解甲烷排放的有希望的方法。

著录项

  • 来源
    《Waste Management》 |2020年第12期|1-8|共8页
  • 作者单位

    Institute of Environmental Science and Technology College of Environment and Resource Science Zhejiang University Hangzhou 310029 PR China;

    Environmental Microbiomics Research Center South China Sea Institution Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai) Sun Yat-sen University Zhuhai 519000 PR China;

    Institute of Environmental Science and Technology College of Environment and Resource Science Zhejiang University Hangzhou 310029 PR China;

    Institute of Environmental Science and Technology College of Environment and Resource Science Zhejiang University Hangzhou 310029 PR China;

    Institute of Environmental Science and Technology College of Environment and Resource Science Zhejiang University Hangzhou 310029 PR China;

    Soil and Crop Science Section School of Integrative Plant Science Cornell University Ithaca NY 14853 USA;

    Institute of Environmental Science and Technology College of Environment and Resource Science Zhejiang University Hangzhou 310029 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar amendment strategy; Rice production; Methane emission;

    机译:生物炭修正案策略;稻米生产;甲烷排放;

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